the plane of polarization matches the vibrational direction of the electrons
Sound is produced by vibration in the air. For example, when you speak your vocal cords vibrate, causing a sound. Your ears sense the vibration and tell your brain about the change in environment.
It is electricity (or electrical energy) that we find is used in homes, and it is produced by the movement of electrons.
The vibration of the Longitudinal wave is parallel to the wave direction and the vibration is perpendicular to the direction in the transverse wave.
Releasing Energy
Electrons were produced in a cathode ray tube by applying a high voltage to the cathode, causing electrons to be emitted through thermionic emission. These electrons were then accelerated towards the anode by the electric field within the tube, creating a beam of electrons known as the cathode ray.
When each portion of a coil spring is alternatively compressed and extended, a longitudinal wave is produced. Longitudinal waves propagate in the same direction as the direction of the vibration of the particles of the medium.
A transverse wave can be produced on a slinky. As you move one end up and down, it creates a wave that travels along the length of the slinky. Transverse waves have a perpendicular vibration direction to the direction of wave propagation.
DayKota Stevenson.
Vibration of the reed.
Earthquakes
the vibration of earth produced by the rapid release of energy
Irregular and non-periodic vibration produce noise.
Free electrons are produced in ß- decay, the first electrons were produced in the big bang
The tone produced by one vibration of a string is called a fundamental frequency. This fundamental frequency is the lowest frequency at which the string will vibrate, and it determines the pitch of the note that is produced.
it's because of the vibration
fundamental frequency
Sound energy is produced when there is vibration in the air. Sound waves are created as the vibrating air molecules compress and expand, transmitting energy through the air.